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首页> 外文期刊>Plasma Science, IEEE Transactions on >Surface Treatment of Polyethylene Terephthalate Films Using DBD Excited by Repetitive Unipolar Nanosecond Pulses in Air at Atmospheric Pressure
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Surface Treatment of Polyethylene Terephthalate Films Using DBD Excited by Repetitive Unipolar Nanosecond Pulses in Air at Atmospheric Pressure

机译:大气中重复单极纳秒脉冲在空气中激发的DBD对聚对苯二甲酸乙二酯薄膜的表面处理

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摘要

Dielectric barrier discharge (DBD) is proved to be an effective method for surface treatment of polymers over the past 20 years and is now widely used in the fields of surface modification. In this paper, surface treatment of polyethylene terephthalate (PET) films for improving the hydrophilicity using DBD excited by unipolar nanosecond pulses is presented. Two typical discharges exhibiting homogeneous and filamentary modes are obtained under certain experimental conditions, and then, they are used to modify the surface of PET films. The microstructure and properties of the film surface before and after treatment are characterized with water contact angle measurement, scanning electron microscope, atomic force microscope, and X-ray photoelectron spectroscope. The results show that, with the treatment power density of 192 and 158 $hbox{mW/cm}^{2}$ in filamentary and homogeneous modes, respectively, surface morphology and property after treatment are significantly changed, and the physical etching and introduction of oxygen-containing polar functional groups account for the decease of surface contact angle and the increase of surface roughness. Compared with the filamentary DBD treatment, the homogeneous DBD (HDBD) is more effective in surface treatment, such as lower contact angle, higher roughness, and more oxygen-containing function groups after treatment. It is attributed to the fact that the HDBD can achieve a uniform treatment and can make the physical and chemical interaction much sufficient.
机译:在过去的20年中,电介质阻挡放电(DBD)被证明是一种有效的聚合物表面处理方法,目前已广泛用于表面改性领域。在本文中,提出了使用单极性纳秒脉冲激发的DBD对聚对苯二甲酸乙二醇酯(PET)薄膜进行表面处理以提高亲水性的方法。在某些实验条件下,获得了两种表现出均相和丝状模式的典型放电,然后将它们用于修饰PET膜的表面。用水接触角测量,扫描电子显微镜,原子力显微镜和X射线光电子能谱仪表征处理前后膜表面的微观结构和性能。结果表明,在丝状和均质模式下,处理功率密度分别为192和158 $ hbox {mW / cm} ^ {2} $时,处理后的表面形态和性能发生了显着变化,物理腐蚀和引入含氧极性官能团的存在是表面接触角降低和表面粗糙度增加的原因。与丝状DBD处理相比,均质DBD(HDBD)在表面处理上更有效,例如,接触角较小,粗糙度更高,处理后含氧官能团更多。归因于以下事实:HDBD可以实现均匀处理,并且可以使物理和化学相互作用变得足够充分。

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